McKeown, N. B. (1998). Phthalocyanine materials: synthesis, structure and function. Cambridge University Press.
Li, X., Zheng, B. D., Peng, X. H., Li, S. Z., Ying, J. W., Zhao, Y., Huang, J. D., & Yoon, J. (2019). Phthalocyanines as medicinal photosensitizers: Developments in the last five years. Coordination Chemistry Reviews, 379, 147–160.
Aggarwal, A., Samaroo, D., Jovanovic, I. R., Singh, S., Tuz, M. P., & Mackiewicz, M. R. (2019). Porphyrinoid-based photosensitizers for diagnostic and therapeutic applications: An update. J Porphyrins Phthalocyanines, 23, 729–765.
Zhao, J. F., Wang, J., Chen, J. Y., Chidawanykia, W., Nyokong, T., Ishii, K., & Kobayashi, N. (2012). Gallium phthalocyanine photosensitizers: Carboxylation enhances the cellular uptake and improves the photodynamic therapy of cancers. ACAMC, 12, 604–610.
Rosenthal, I., & PHTHALOCYANINES AS PHOTODYNAMIC SENSITIZERS*. (1991). Photochem & Photobiology, 53, 859–870.
Durmuş, M., & Nyokong, T. (2007). Synthesis, photophysical and photochemical properties of aryloxy tetra-substituted gallium and indium phthalocyanine derivatives. Tetrahedron, 63, 1385–1394.
Macdonald, I. J., & Dougherty, T. J. (2001). Basic principles of photodynamic therapy. J Porphyrins Phthalocyanines, 05, 105–129.
Günsel, A., Kocabaş, S., Bilgiçli, A. T., Güney, S., & Kandaz, M. (2016). Synthesis, photophysical and electrochemical properties of water–soluble phthalocyanines bearing 8-hydroxyquinoline-5-sulfonicacid derivatives. Journal of Luminescence, 176, 387–396.
Van De Winckel, E., Mascaraque, M., Zamarrón, A., De La Fuente, Á. J., & Torres, T. (2018). De La Escosura, dual role of subphthalocyanine dyes for optical imaging and therapy of cancer. Adv Funct Materials, 28, 1705938.
Cheng, D., Wang, X., Zhou, X., & Li, J. (2021). Nanosonosensitizers with ultrasound-induced reactive oxygen species generation for cancer sonodynamic immunotherapy. Frontiers in Bioengineering and Biotechnology, 9, 761218.
Article PubMed PubMed Central Google Scholar
Günsel, A., Küçük, M. C., Günsel, H., Yaşa Atmaca, G., Bilgiçli, A. T., Erdoğmuş, A., & Yarasir, M. N. (2023). 3-Chloro-4-fluorophenoxy substituted zinc phthalocyanine/graphene oxide composites: Exploring of their sono-photochemical properties. Chemical Papers, 77, 5721–5731.
Karanlık, C. C., Atmaca, G. Y., & Erdoğmuş, A. (2021). Improved singlet oxygen yields of new palladium phthalocyanines using sonochemistry and comparisons with photochemistry. Polyhedron, 206, 115351.
Günsel, A., Mutlu, N., Yaşa Atmaca, G., Günsel, H., Bilgiçli, A. T., & Erdoğmuş, A. (2023). and M. Nilüfer Yarasir, Novel Graphene Oxide/Zinc Phthalocyanine Composites Bearing 3-Chloro‐4‐Fluorophenoxy: Potential Usage for Sono/Photochemical Applications, ChemistrySelect, 8, e202204546.
Tunca, H., Özpinar, S. Ç., TEKBABA, A. G., Sevindik, T. O., & GÜNSEL, A. (2022). BİLGİÇLİ and M. N. YARAŞIR, algaecidal and oxidative effects of metal-free phthalocyanine beta tetra-substituted with sodium 2-mercaptoethanesulfonate. Turkish Journal of Chemistry, 46, 367–377.
Article PubMed CAS Google Scholar
Lo, P. C., Rodríguez-Morgade, M. S., Pandey, R. K., Ng, D. K., Torres, T., & Dumoulin, F. (2020). The unique features and promises of phthalocyanines as advanced photosensitisers for photodynamic therapy of cancer. Chemical Society Reviews, 49, 1041–1056.
Article PubMed CAS Google Scholar
Al-Hamdan, N. S., Hussain, A., Kozlikova, M., Alfred, M. A., Machacek, M., Ganesan, A., Zimcik, P., & Makhseed, S. (2024). Enhanced photodynamic activity of asymmetric non-ionic Zn (II) phthalocyanine amphiphiles: Effect of molecular design on in vitro activity. Dyes and Pigments, 221, 111809.
Zhao, Y., Zhang, X., Chen, Z., Xu, Y., Kim, H., Jeong, H., Lee, Y. R., Lee, J., Li, X., & Yoon, J. (2024). Supramolecular phthalocyanine assemblies-enhanced synergistic photodynamic and photothermal therapy guided by photoacoustic imaging. Aggregate, 5, e514.
Mahmudov, I., Ibrahimova, B., Taslimi, P., Sadeghian, N., Karaoğlan, Z., Taskin-Tok, T., Abdullayev, Y., Farzaliyev, V., Sujayev, A., & Alwasel, S. H. (2024). Synthesis, characterization, crystal structure, molecular docking, and biological studies of Cu, Ni and Co metal complexes of pyrazole. Journal of Molecular Structure, 1309, 138205.
Tapera, M., Kekeçmuhammed, H., Tüzün, B., Daştan, S. D., Çelik, M. S., Taslimi, P., Dastan, T., Topcu, K. S. B., Cacan, E., & Şahin, O. (2024). Novel 1, 2, 4-triazole-maleamic acid derivatives: Synthesis and evaluation as anticancer agents with carbonic anhydrase inhibitory activity. Journal of Molecular Structure, 1313, 138680.
Medetalibeyoğlu, H., Manap, S., Alkan, M., Beytur, M., Barlak, N., Karatas, O. F., Tüzün, B., Yüksek, H., Taslimi, P., Novel Schiff Bases: Synthesis, Characterization, Bioactivity, Cytotoxicity, and, & Evaluations, C. (2024). Polycyclic Aromatic Compounds, 1–19.
Durmaz, L., Karageçili, H., Erturk, A., Ozden, E. M., Taslimi, P., Alwasel, S., & Gülçin, İ. (2024). Hamamelitannin’s antioxidant effect and its Inhibition capability on α-glycosidase, carbonic anhydrase, acetylcholinesterase, and butyrylcholinesterase enzymes. Processes, 12, 2341.
Fatullayeva, P. A., Medjidov, A. A., Safronenko, M. G., Khrustalev, V. N., Ismayilov, R. H., Bayramov, M. A., Yalcin, B., Sadeghian, N., Taslimi, P., & Tuzun, B. (2024). Bioactivity, crystal and molecular structure of Vanadyl (III) complex with N-salicyloyl- N’(3, 5-ditertbutyl-2-hydroxy) benzylidene hydrazine. Polyhedron, 257, 117024.
Solğun, D. G., Sadeghian, N., Taskin-Tok, T., Ağirtaş, M. S., & Taslimi, P. (2024). Synthesis, fluorescence, enzymes effects, and evaluation of tetrahydroxy substituted zinc phthalocyanine as multitarget metabolic enzyme inhibitors with molecular docking: The biochemistry-oriented drug design. J IRAN CHEM SOC, 21, 2413–2424.
Alishba, I., Ali, S., Hameed, K. M., Khan, U., Salar, M., Taha, N., Sadeghian, P., Taslimi, B., Tuzun, D., Özerkan, H., Dedeakayogullari, & Ulukaya, E. (2024). Exploring Benzo[ b ][1,4]Thiazine Derivatives: Multitarget Inhibition, Structure–Activity Relationship, Molecular Docking, and ADMET Analysis, ChemistrySelect, 9, e202404087.
Abbasova, G., Medjidov, A., Ismayilov, R., Tagiyev, D., Sertçelik, M., Hökelek, T., Huseynova, M., Fatullaeva, P., Çakır, F., & Şenol, H. (2025). Photoorganocatalytic synthesis, characterization, crystal structure of two schiff bases and their in vitro and in Silico evaluations as cholinesterase inhibitors. Journal of Molecular Structure, 1329, 141396.
Ol’ga, V. P., Tomilin, D. N., Şenol, H., Belyaeva, K. V., Nikitina, L. P., Oparina, L. A., Sobenina, L. N., Trofimov, B. A., Sadeghian, N., & Taslimi, P. (2024). Synthesis of pyrrole-heterocyclic derivatives as anti-Alzheimer and antidiabetic candidates: An in vitro-in Silico study. Journal of Molecular Structure, 1315, 138998.
Yalazan, H., Koç, D., Aydın Kose, F., Fandaklı, S., Tüzün, B., Akgül, M. İ., Sadeghian, N., Taslimi, P., & Kantekin, H. (2023). Design, syntheses, theoretical calculations, MM-GBSA, potential anti-cancer and enzyme activities of novel schiff base compounds. Journal of Biomolecular Structure and Dynamics, 1–14.
Günsel, A., Yıldırım, A., Taslimi, P., Erden, Y., Taskin-Tok, T., Pişkin, H., Bilgicli, A. T., Gülçin, İ., & Yarasir, M. N. (2022). Cytotoxicity effects and biochemical investigation of novel tetrakis-phthalocyanines bearing 2-thiocytosine moieties with molecular Docking studies. Inorganic Chemistry Communications, 138, 109263.
Çamur, M., Durmuş, M., & Bulut, M. (2011). Synthesis, characterization and comparative studies on the photophysical and photochemical properties of metal-free and zinc (II) phthalocyanines with phenyloxyacetic acid functionalities. Polyhedron, 30, 1935–1944.
Khene, S., Ogunsipe, A., Antunes, E., & Nyokong, T. (2007). Microwave synthesis and photophysics of new tetrasulfonated tin(II) macrocycles. J Porphyrins Phthalocyanines, 11, 109–117.
Durmuş, M., & Nyokong, T. (2007). Synthesis, photophysical and photochemical studies of new water-soluble indium(iii) phthalocyanines. Photochemical & Photobiological Sciences, 6, 659–668.
Gaspard, S., & Maillard, P. (1987). Structure des Phtalocyanines tetra tertio-butylees: Mecanisme de La synthese. Tetrahedron, 43, 1083–1090.
Mack, J., & Kobayashi, N. (2011). Low symmetry phthalocyanines and their analogues. Chemical Reviews, 111, 281–321.
Article PubMed CAS Google Scholar
Bilgiçli, A. T., Günsel, A., Kandaz, M., & Özkaya, A. R. (2012). Highly selective thioalcohol modified phthalocyanine sensors for ag (I) and Pd (II) based on target induced J-and H-type aggregations: synthesis, electrochemistry and peripheral metal ion binding studies. Dalton Transactions, 41, 7047–7056.
Günsel, A., Bilgiçli, A. T., Kandaz, M., Orman, E. B., & Özkaya, A. R. (2014). Ag (I) and Pd (II) sensing, H-or J-aggregation and redox properties of metal-free, Manganase (III) and gallium (III) phthalocyanines. Dyes and Pigments, 102, 169–179.
Göksel, M., Durmuş, M., & Atilla, D. (2012). A comparative study on photophysical and photochemical properties of zinc phthalocyanines with different molecular symmetries. J Porphyrins Phthalocyanines, 16, 895–906.
Ogunsipe, A., Maree, D., & Nyokong, T. (2003). Solvent effects on the photochemical and fluorescence properties of zinc phthalocyanine derivatives. Journal of Molecular Structure, 650, 131–140.
Bıyıklıoğlu, Z., Durmuş, M., & Kantekin, H. (2011). Tetra-2-[2-(dimethylamino) ethoxy] ethoxy substituted zinc phthalocyanines and their quaternized analoques: synthesis, characterization, photophysical and photochemical properties. Journal of Photochemistry and Photobiology A: Chemistry, 222, 87–96.
Ng, A. C. H., Li, X., & Ng, D. K. P. (1999). Synthesis and photophysical properties of nonaggregated phthalocyanines bearing dendritic substituents. Macromolecules, 32, 5292–5298.
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